Area of research
Molecular Biology · Environmental Chemistry
Research interest
Research interests include Biology, 16S ribosomal RNA, Arsenic, Arsenite, Strain (injury), and Bacteria.
Influence of Bacterial Strains and Cell Numbers on the Reduction of Fe(III)-Citrate and Ferrihydrite with and without an Electron Shuttle
An alternate pathway of antimonite [Sb(III)] resistance in Ensifer adhaerens mediated by ArsZ’
Evolutionary Advantages of Multiple Arsenic Binding Sites in an ArsR Transcriptional Repressor
Curtobacterium phyllosphaerae sp. nov. and Curtobacterium guangdongense sp. nov., isolated from the citrus phyllosphere
Arsenic Methylation by a Sulfate-Reducing Bacterium from Paddy Soil Harboring a Novel ArsSM Fusion Protein
Arsenate reductase of <i>Rufibacter tibetensis</i> is a metallophosphoesterase evolved to catalyze redox reactions
Widespread Distribution of the <i>arsO</i> Gene Confers Bacterial Resistance to Environmental Antimony
Peroxisome dynamics determines host-derived ROS accumulation and infectious growth of the rice blast fungus
Anoxygenic phototrophic arsenite oxidation by a <scp> <i>Rhodobacter</i> </scp> strain
Methionine biosynthesis enzyme MoMet2 is required for rice blast fungus pathogenicity by promoting virulence gene expression via reducing 5mC modification
The rice transcription factor Nhd1 regulates root growth and nitrogen uptake by activating nitrogen transporters
The transcription factor OsWRKY10 inhibits phosphate uptake via suppressing<i>OsPHT1;2</i>expression under phosphate-replete conditions in rice
Elucidating heterogeneous iron biomineralization patterns in a denitrifying As( <scp>iii</scp> )-oxidizing bacterium: implications for arsenic immobilization
<scp>ArsZ</scp> from <i>Ensifer adhaerens</i> <scp>ST2</scp> is a novel methylarsenite oxidase
Functional characterization of the methylarsenite‐inducible <scp> <i>arsRM</i> </scp> operon from <i>Noviherbaspirillum denitrificans</i> <scp>HC18</scp>
A <scp>PadR</scp> family transcriptional repressor controls transcription of a trivalent metalloid resistance operon of <scp> <i>Azospirillum halopraeferens</i> </scp> strain <scp>Au 4</scp>
Genome-wide detection of cytosine methylations in plant from Nanopore data using deep learning
Anaerobic As(III) Oxidation Coupled with Nitrate Reduction and Attenuation of Dissolved Arsenic by <i>Noviherbaspirillum</i> Species
Oxidation of organoarsenicals and antimonite by a novel flavin monooxygenase widely present in soil bacteria
Acclimation of CH4 emissions from paddy soil to atmospheric CO2 enrichment in a growth chamber experiment
Organoarsenical tolerance in <i>Sphingobacterium wenxiniae</i> , a bacterium isolated from activated sludge
A newly-isolated Cd-loving Purpureocillium sp. strain YZ1 substantially alleviates Cd toxicity to wheat
<scp>ArsV</scp> and <scp>ArsW</scp> provide synergistic resistance to the antibiotic methylarsenite
Pseudaminobacter soli sp. nov., Isolated from Paddy Soil Contaminated with Heavy Metals
OsWRKY108 is an integrative regulator of phosphorus homeostasis and leaf inclination in rice
OsWRKY21 and OsWRKY108 function redundantly to promote phosphate accumulation through maintaining the constitutive expression of <i>OsPHT1;1</i> under phosphate‐replete conditions
Nitrite Accumulation Is Required for Microbial Anaerobic Iron Oxidation, but Not for Arsenite Oxidation, in Two Heterotrophic Denitrifiers
Phylogenomics reveals the basis of adaptation of Pseudorhizobium species to extreme environments and supports a taxonomic revision of the genus
Reducing cadmium bioavailability and accumulation in vegetable by an alkalizing bacterial strain
Chitinophaga tropicalis sp. nov., isolated from forest soil